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1.
Zhonghua Er Ke Za Zhi ; 62(7): 676-680, 2024 Jul 02.
Article in Chinese | MEDLINE | ID: mdl-38955687

ABSTRACT

Objective: To summarize the clinical manifestations, diagnosis, treatment and prognosis of acute flaccid myelitis (AFM) in children. Methods: Clinical characteristics of 4 AFM cases from Department of Neurology, Children's Hospital Affiliated to Capital Institute of Pediatrics, from September 2018 to November 2022, were analyzed retrospectively. Results: The age of 4 children with AFM was 7 years, 4 years and 3 months, 7 years and 1 month, 6 years and 5 months, respectively. There were 2 boys and 2 girls. Prodromal infection status showed 3 children of respiratory tract infection and 1 child of digestive tract infection. The main manifestation was asymmetrical limb weakness after infection, and the affected limb range was from monoplegia to quadriplegia. Cranial nerve injury was involved in 1 child, no encephalopathy. Magnetic resonance imaging in the spinal cord of all 4 children showed long T1 and T2 signals, mainly involving gray matter. Cerebrospinal fluid cell-protein separation was observed in 2 children. Pathogen detected in 1 child pharyngeal swab was enterovirus D68. Antibody IgM to adenovirus was positive in the blood of 1 child. Antibody IgG against Echo and Coxsackie B virus were positive in the blood of another child. After glucocorticoid, human immunoglobulin or simple symptomatic treatment and at the same time under later rehabilitation training, muscle strength recovered to different degrees, but there were disabilities left in 3 children. Conclusions: AFM should be considered in children with acute and asymmetrical flaccid paralysis accompanied by abnormal magnetic resonance imaging signal in the central region of spinal cord, especially post-infection. The effective treatment is limited and the prognosis is poor.


Subject(s)
Central Nervous System Viral Diseases , Magnetic Resonance Imaging , Myelitis , Neuromuscular Diseases , Humans , Myelitis/diagnosis , Myelitis/virology , Male , Female , Child , Child, Preschool , Retrospective Studies , Central Nervous System Viral Diseases/diagnosis , Neuromuscular Diseases/diagnosis , Enterovirus D, Human/isolation & purification , Prognosis , Spinal Cord/pathology , Enterovirus Infections/diagnosis , Quadriplegia/etiology , Quadriplegia/diagnosis , Respiratory Tract Infections/diagnosis
2.
Continuum (Minneap Minn) ; 30(3): 818-844, 2024 Jun 01.
Article in English | MEDLINE | ID: mdl-38830072

ABSTRACT

OBJECTIVE: This article aims to familiarize the reader with the clinical approach, diagnostic considerations, and treatment strategies for patients presenting with abrupt-onset or acutely worsening weakness due to neuromuscular disorders. LATEST DEVELOPMENTS: Neuromuscular weakness is often the result of an inflammatory process. In recent years, there has been growing recognition of pathologic antibodies that cause neuromuscular injury. This has allowed clinicians to make a more accurate diagnosis. Additionally, neuromuscular junction disorders and myopathies are increasingly identified as the adverse effects of novel anticancer therapies, namely immune checkpoint inhibitors. More data are being incorporated into frameworks for neuroprognostication after neuromuscular emergencies, especially for commonly encountered disorders such as Guillain-Barré syndrome. ESSENTIAL POINTS: Care of patients with neuromuscular emergencies requires prompt attention to respiratory status. Once supportive measures are in place to protect the airway and facilitate effective ventilation, diagnostic considerations should hinge on appropriate neurologic localization. Aggressive immunosuppression is often required for immune-mediated neuromuscular disorders, and clinicians must be thoughtful in selecting a strategy that best aligns with each patient's risk factors and comorbidities.


Subject(s)
Neuromuscular Diseases , Humans , Neuromuscular Diseases/diagnosis , Neuromuscular Diseases/therapy , Neuromuscular Diseases/physiopathology , Emergencies , Male , Female , Middle Aged
3.
Rheum Dis Clin North Am ; 50(3): 381-408, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38942576

ABSTRACT

Systemic diseases can cause heart block owing to the involvement of the myocardium and thereby the conduction system. Younger patients (<60) with heart block should be evaluated for an underlying systemic disease. These disorders are classified into infiltrative, rheumatologic, endocrine, and hereditary neuromuscular degenerative diseases. Cardiac amyloidosis owing to amyloid fibrils and cardiac sarcoidosis owing to noncaseating granulomas can infiltrate the conduction system leading to heart block. Accelerated atherosclerosis, vasculitis, myocarditis, and interstitial inflammation contribute to heart block in rheumatologic disorders. Myotonic, Becker, and Duchenne muscular dystrophies are neuromuscular diseases involving the myocardium skeletal muscles and can cause heart block.


Subject(s)
Heart Block , Humans , Heart Block/diagnosis , Heart Block/etiology , Rheumatic Diseases/complications , Neuromuscular Diseases/diagnosis , Neuromuscular Diseases/physiopathology , Sarcoidosis/diagnosis , Sarcoidosis/complications , Amyloidosis/diagnosis , Amyloidosis/complications
4.
Muscle Nerve ; 70(2): 187-193, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38695636

ABSTRACT

INTRODUCTION/AIMS: Self-efficacy reflects a person's perceptions of their capabilities for specific tasks and influences motivation and performance. The Unidimensional Self-Efficacy in Neuromuscular Disorders (USE-NM) was modified from the Multiple Sclerosis (MS) USE-MS scale and administered to patients attending a specialist neuromuscular clinic. The aim was to investigate this measure in neuromuscular disorders and to compare between patient sex, age, and diagnosis. METHODS: The USE-NM was posted to patients recruited from a specialist neuromuscular clinic at the Walton Centre. Responses were subjected to Rasch analysis using RUMM2030 software and descriptive statistics were performed using SPSS version 28. RESULTS: One hundred and ninety-eight patients (56.1% male) grouped by age (<50; 50-59; 60-69; and >69 years) and with varied NM disorders returned the USE-NM. It did not meet the Rasch model expectations due to disordered thresholds of items 6 and 8 ("Sometimes I feel inadequate as a person because of my neuromuscular disorder" and "I feel that my social life would be better if I did not have a neuromuscular disorder"). Following item re-scoring, the modified USE-NM satisfied the Rasch model with a unidimensional scale free from differential item functioning and an overall chi-square probability of 0.146 with good reliability and validity. Post hoc nonparametric testing showed no significant difference in fatigue between sex, age, and neuromuscular diagnoses. DISCUSSION: The Rasch-modified USE-NM offers a measure of self-efficacy for neuromuscular disorders encountered in a typical specialist clinic. Future considerations could be given to assessing any benefits of multidisciplinary team input, across a specialist neuromuscular service.


Subject(s)
Neuromuscular Diseases , Self Efficacy , Humans , Male , Female , Neuromuscular Diseases/diagnosis , Neuromuscular Diseases/psychology , Middle Aged , Aged , Adult , Psychometrics , Age Factors , Sex Factors , Surveys and Questionnaires , Aged, 80 and over
5.
Brain Nerve ; 76(5): 449-462, 2024 May.
Article in Japanese | MEDLINE | ID: mdl-38741483

ABSTRACT

Electrophysiologic testing plays an important role in evaluating peripheral nerve, muscle, and neuromuscular junction diseases, aiding in diagnosis and treatment strategies by offering real-time assessment. Demyelination of peripheral nerves results in increased conduction delay, temporal dispersion, conduction block, and stimulation threshold. The localization or diffusion of these changes is crucial in understanding disease pathogenesis, necessitating stimulation at multiple points along nerve pathways. When axonal degeneration occurs, the amplitude is reduced, with mild conduction delay. Acute axonal degeneration may require 1 week to develop into Wallerian degeneration. During this time, conductivity was preserved in the nerve peripheral to the lesion. When MG or LEMS is suspected, repetitive nerve stimulation tests and single-fiber EMG are valuable for the diagnosis and pathophysiological evaluation. Notably, the latter is highly sensitive but not specific. Needle electromyography (EMG) assists in differentiating between myopathies and neurogenic diseases, and in determining whether the patient is in an acute or chronic stage. Integration of these tests contribute to an accurate diagnosis when considering the presenting symptoms.


Subject(s)
Electromyography , Neuromuscular Diseases , Humans , Neuromuscular Diseases/diagnosis , Neuromuscular Diseases/physiopathology , Neural Conduction/physiology
7.
Brain Nerve ; 76(5): 487-496, 2024 May.
Article in Japanese | MEDLINE | ID: mdl-38741487

ABSTRACT

Neuromuscular ultrasound has become an integral part of the diagnostic workup of neuromuscular diseases in neurology. Neuromuscular ultrasound can detect nerve enlargement, selective muscle damage, and fasciculation easily and non-invasively, which allows differentiation between auto-immune/inflammatory and degenerative/hereditary diseases. It is significant and essential for all neurologists to master the neuromuscular ultrasound technique.


Subject(s)
Neuromuscular Diseases , Ultrasonography , Humans , Neuromuscular Diseases/diagnostic imaging , Neuromuscular Diseases/diagnosis
8.
Semin Pediatr Neurol ; 49: 101123, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38677802

ABSTRACT

Acute neuromuscular disorders occasionally occur in the Pediatric Neurologic Intensive Care Unit. Many of these are primary disorders of the motor unit that may present acutely or exacerbate during an intercurrent illness. Additionally, acute neuromuscular disorders may develop during an acute systemic illness requiring intensive care management that predispose the child to another set of acute motor unit disorders. This chapter discusses acute neuromuscular crises in the infant, toddler, and adolescent, as well as neuromuscular disorders resulting from critical illness.


Subject(s)
Critical Illness , Neuromuscular Diseases , Humans , Neuromuscular Diseases/physiopathology , Neuromuscular Diseases/therapy , Neuromuscular Diseases/diagnosis , Infant, Newborn , Child , Infant , Child, Preschool , Adolescent , Intensive Care Units, Pediatric
9.
Pediatr Infect Dis J ; 43(7): 708-710, 2024 Jul 01.
Article in English | MEDLINE | ID: mdl-38451987

ABSTRACT

Human rhinovirus (HRV) has been sporadically detected in patients with acute flaccid myelitis (AFM). We report a case of AFM in a 2-year-old boy with severe neurologic sequelae, whose nasopharyngeal and stool samples tested positive for HRV-A19. Clinical information related to AFM with HRV is limited. Further study of the association of AFM with HRV is warranted.


Subject(s)
Central Nervous System Viral Diseases , Myelitis , Neuromuscular Diseases , Picornaviridae Infections , Rhinovirus , Humans , Male , Myelitis/virology , Myelitis/diagnosis , Child, Preschool , Picornaviridae Infections/diagnosis , Picornaviridae Infections/virology , Neuromuscular Diseases/virology , Neuromuscular Diseases/diagnosis , Rhinovirus/isolation & purification , Rhinovirus/genetics , Central Nervous System Viral Diseases/virology , Central Nervous System Viral Diseases/diagnosis , Feces/virology , Nasopharynx/virology
10.
Ann Clin Transl Neurol ; 11(5): 1250-1266, 2024 May.
Article in English | MEDLINE | ID: mdl-38544359

ABSTRACT

OBJECTIVE: Most families with heritable neuromuscular disorders do not receive a molecular diagnosis. Here we evaluate diagnostic utility of exome, genome, RNA sequencing, and protein studies and provide evidence-based recommendations for their integration into practice. METHODS: In total, 247 families with suspected monogenic neuromuscular disorders who remained without a genetic diagnosis after standard diagnostic investigations underwent research-led massively parallel sequencing: neuromuscular disorder gene panel, exome, genome, and/or RNA sequencing to identify causal variants. Protein and RNA studies were also deployed when required. RESULTS: Integration of exome sequencing and auxiliary genome, RNA and/or protein studies identified causal or likely causal variants in 62% (152 out of 247) of families. Exome sequencing alone informed 55% (83 out of 152) of diagnoses, with remaining diagnoses (45%; 69 out of 152) requiring genome sequencing, RNA and/or protein studies to identify variants and/or support pathogenicity. Arrestingly, novel disease genes accounted for <4% (6 out of 152) of diagnoses while 36.2% of solved families (55 out of 152) harbored at least one splice-altering or structural variant in a known neuromuscular disorder gene. We posit that contemporary neuromuscular disorder gene-panel sequencing could likely provide 66% (100 out of 152) of our diagnoses today. INTERPRETATION: Our results emphasize thorough clinical phenotyping to enable deep scrutiny of all rare genetic variation in phenotypically consistent genes. Post-exome auxiliary investigations extended our diagnostic yield by 81% overall (34-62%). We present a diagnostic algorithm that details deployment of genomic and auxiliary investigations to obtain these diagnoses today most effectively. We hope this provides a practical guide for clinicians as they gain greater access to clinical genome and transcriptome sequencing.


Subject(s)
Exome Sequencing , Neuromuscular Diseases , Humans , Neuromuscular Diseases/genetics , Neuromuscular Diseases/diagnosis , Male , Female , Adult , Sequence Analysis, RNA/methods , Child , Adolescent , Exome/genetics , Middle Aged , Young Adult , Child, Preschool , High-Throughput Nucleotide Sequencing , Infant , Genetic Testing/methods
11.
Muscle Nerve ; 69(6): 670-681, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38549195

ABSTRACT

Although existing guidelines address electrodiagnostic (EDX) testing in identifying neuromuscular conditions, guidance regarding the uses and limitations of serial (or repeat) EDX testing is limited. By assessing neurophysiological change longitudinally across time, serial electrodiagnosis can clarify a diagnosis and potentially provide valuable prognostic information. This monograph presents four broad indications for serial electrodiagnosis in adult peripheral neurological disorders. First, where clinical change has raised suspicion for a new or ongoing lesion, EDX reassessment for spatial spread of abnormality, involvement of previously normal muscle or nerve, and/or evolving pathophysiology can clarify a diagnosis. Second, where diagnosis of a progressive neuromuscular condition is uncertain, electrophysiological data from a second time point can confirm or refute suspicion. Third, to establish prognosis after a static nerve injury, a repeat study can assess the presence and extent of reinnervation. Finally, faced with a limited initial study (as when complicated by patient or environmental factors), a repeat EDX study can supplement missing or limited data to provide needed clarity. Repeat EDX studies carry certain limitations, however, such as with prognostication in the setting of remote or chronic lesions, sensory predominant fascicular injury, or mild axonal injury. Nevertheless, serial electrodiagnosis remains a valuable and underused tool in the diagnostic and prognostic evaluation of neuromuscular conditions.


Subject(s)
Electrodiagnosis , Adult , Humans , Electrodiagnosis/methods , Electromyography/methods , Nervous System Diseases/diagnosis , Nervous System Diseases/physiopathology , Neural Conduction/physiology , Neuromuscular Diseases/diagnosis , Neuromuscular Diseases/physiopathology
12.
J Clin Neuromuscul Dis ; 25(3): 122-131, 2024 Mar 01.
Article in English | MEDLINE | ID: mdl-38441928

ABSTRACT

OBJECTIVES: Neuromuscular disorders could have respiratory involvement early or late into illness. Rarely, patients may present with a hypercapnic respiratory failure (with minimal motor signs) unmasking an underlying disease. There are hardly any studies which have addressed the spectrum and challenges involved in management of this subset, especially in the real-world scenario. METHODS: A retrospective study comprising consecutive patients hospitalized with hypercapnic respiratory failure as the sole/dominant manifestation. The clinical-electrophysiological spectrum, phrenic conductions, diaphragm thickness, and outcomes were analyzed. RESULTS: Twenty-seven patients were included, the mean age was 47.29 (SD 15.22) years, and the median duration of respiratory symptoms was 2 months (interquartile range [IQR] 1-4). Orthopnea was present in 23 patients (85.2%) and encephalopathy in 8 patients (29.6%). Phrenic nerve latencies and amplitudes were abnormal in 83.3% and 95.6%, respectively. Abnormal diaphragm thickness was noted in 78.5%. Based on a comprehensive electrophysiological strategy and paraclinical tests, an etiology was established in all. Reversible etiologies were identified in 17 patients (62.9%). These included myasthenia gravis (anti-AChR and MuSK), inflammatory myopathy, riboflavin transporter deficiency neuronopathy, Pompe disease, bilateral phrenic neuritis, and thyrotoxicosis. Respiratory onset motor neuron disease was diagnosed in 8 patients (29.6%). Despite diaphragmatic involvement, a functional respiratory recovery was noted at discharge (45%) and last follow-up (60%). Predictors for good outcomes included female sex, normal nerve conductions, and recent-onset respiratory symptoms. DISCUSSION: A good functional recovery was noted in most of the patients including respiratory onset motor neuron disease. A systematic algorithmic approach helps in proper triaging, early diagnosis, and treatment. Clinical and electrodiagnostic challenges and observations from a tertiary care referral center are discussed.


Subject(s)
Bulbar Palsy, Progressive , Neuromuscular Diseases , Respiratory Insufficiency , Humans , Female , Middle Aged , Tertiary Care Centers , Retrospective Studies , Neuromuscular Diseases/complications , Neuromuscular Diseases/diagnosis , Respiratory Insufficiency/diagnosis , Respiratory Insufficiency/etiology
13.
Pediatr Ann ; 53(2): e62-e69, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38302126

ABSTRACT

Obstructive sleep apnea (OSA) is a respiratory disorder that has a high prevalence in patients with craniofacial, neurocognitive, and neuromuscular disorders. Currently, the treatments for this population are diverse and depend on the individual conditions of the patient and the severity of the case. However, there are no multidisciplinary dental treatment guidelines. The aim of the present study was to determine the multidisciplinary dental treatment alternatives in patients with craniofacial, neurocognitive, and neuromuscular disorders with a diagnosis of OSA through evidence-based medicine. A systematic review of the literature has been performed by searching scientific articles in the PubMed, Cochrane, Ovid, ScienceDirect and Scopus databases, through controlled and uncontrolled language. Articles were classified according to the level of evidence and grades of recommendation through the Scottish Intercollegiate Guidelines Network. A total of 19,439 references were identified, of which 15 articles met the predetermined requirements to be included in the investigation. The articles included for this systematic review showed that mandibular distraction osteogenesis and adenotonsilectomy are the first-choice therapies for craniofacial and neurocognitive disorders. However, for neuromuscular disorders, the findings reported were not enough to provide information about surgical or nonsurgical alternatives. Despite the reported high frequency of OSA in those children with craniofacial, neurocognitive, and neuromuscular disorders, the evidence on the surgical and nonsurgical therapeutic success for OSA in these patients is scarce. It is necessary to perform future studies to investigate successful therapies for OSA in children. [Pediatr Ann. 2024;53(2):e62-e69.].


Subject(s)
Neuromuscular Diseases , Sleep Apnea, Obstructive , Child , Humans , Sleep Apnea, Obstructive/complications , Sleep Apnea, Obstructive/diagnosis , Sleep Apnea, Obstructive/therapy , Neuromuscular Diseases/complications , Neuromuscular Diseases/diagnosis , Neuromuscular Diseases/therapy
14.
Acad Emerg Med ; 31(4): 386-397, 2024 04.
Article in English | MEDLINE | ID: mdl-38419365

ABSTRACT

INTRODUCTION: Acute presentations and emergencies in neuromuscular disorders (NMDs) often challenge clinical acumen. The objective of this review is to refine the reader's approach to history taking, clinical localization and early diagnosis, as well as emergency management of neuromuscular emergencies. METHODS: An extensive literature search was performed to identify relevant studies. We prioritized meta-analysis, systematic reviews, and position statements where possible to inform any recommendations. SUMMARY: The spectrum of clinical presentations and etiologies ranges from neurotoxic envenomation or infection to autoimmune disease such as Guillain-Barré Syndrome (GBS) and myasthenia gravis (MG). Delayed diagnosis is not uncommon when presentations occur "de novo," respiratory failure is dominant or isolated, or in the case of atypical scenarios such as GBS variants, severe autonomic dysfunction, or rhabdomyolysis. Diseases of the central nervous system, systemic and musculoskeletal disorders can mimic presentations in neuromuscular disorders. CONCLUSIONS: Fortunately, early diagnosis and management can improve prognosis. This article provides a comprehensive review of acute presentations in neuromuscular disorders relevant for the emergency physician.


Subject(s)
Guillain-Barre Syndrome , Myasthenia Gravis , Neuromuscular Diseases , Humans , Emergencies , Emergency Service, Hospital , Guillain-Barre Syndrome/diagnosis , Guillain-Barre Syndrome/therapy , Myasthenia Gravis/diagnosis , Myasthenia Gravis/therapy , Neuromuscular Diseases/diagnosis , Neuromuscular Diseases/therapy , Peripheral Nervous System , Meta-Analysis as Topic , Systematic Reviews as Topic
15.
Comput Biol Med ; 171: 108095, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38350399

ABSTRACT

Gait abnormalities are frequent in children and can be caused by different pathologies, such as cerebral palsy, neuromuscular disease, toe walker syndrome, etc. Analysis of the "gait pattern" (i.e., the way the person walks) using 3D analysis provides highly relevant clinical information. This information is used to guide therapeutic choices; however, it is underused in diagnostic processes, probably because of the lack of standardization of data collection methods. Therefore, 3D gait analysis is currently used as an assessment rather than a diagnostic tool. In this work, we aimed to determine if deep learning could be combined with 3D gait analysis data to diagnose gait disorders in children. We tested the diagnostic accuracy of deep learning methods combined with 3D gait analysis data from 371 children (148 with unilateral cerebral palsy, 60 with neuromuscular disease, 19 toe walkers, 60 with bilateral cerebral palsy, 25 stroke, and 59 typically developing children), with a total of 6400 gait cycles. We evaluated the accuracy, sensitivity, specificity, F1 score, Area Under the Curve (AUC) score, and confusion matrix of the predictions by ResNet, LSTM, and InceptionTime deep learning architectures for time series data. The deep learning-based models had good to excellent diagnostic accuracy (ranging from 0.77 to 0.99) for discrimination between healthy and pathological gait, discrimination between different etiologies of pathological gait (binary and multi-classification); and determining stroke onset time. LSTM performed best overall. This study revealed that the gait pattern contains specific, pathology-related information. These results open the way for an extension of 3D gait analysis from evaluation to diagnosis. Furthermore, the method we propose is a data-driven diagnostic model that can be trained and used without human intervention or expert knowledge. Furthermore, the method could be used to distinguish gait-related pathologies and their onset times beyond those studied in this research.


Subject(s)
Cerebral Palsy , Deep Learning , Neuromuscular Diseases , Stroke , Child , Humans , Cerebral Palsy/diagnosis , Biomechanical Phenomena , Gait , Neuromuscular Diseases/diagnosis
16.
J Neuromuscul Dis ; 11(2): 253-274, 2024.
Article in English | MEDLINE | ID: mdl-38306060

ABSTRACT

There has been tremendous progress in treatment of neuromuscular diseases over the last 20 years, which has transformed the natural history of these severely debilitating conditions. Although the factors that determine the response to therapy are many and in some instance remain to be fully elucidated, early treatment clearly has a major impact on patient outcomes across a number of inherited neuromuscular conditions. To improve patient care and outcomes, clinicians should be aware of neuromuscular conditions that require prompt treatment initiation. This review describes data that underscore the importance of early treatment of children with inherited neuromuscular conditions with an emphasis on data resulting from newborn screening efforts.


Subject(s)
Neuromuscular Diseases , Infant, Newborn , Child , Humans , Neuromuscular Diseases/genetics , Neuromuscular Diseases/therapy , Neuromuscular Diseases/diagnosis , Neonatal Screening/methods
17.
Sci Rep ; 14(1): 4306, 2024 02 21.
Article in English | MEDLINE | ID: mdl-38383731

ABSTRACT

Rare or novel missense variants in large genes such as TTN and NEB are frequent in the general population, which hampers the interpretation of putative disease-causing biallelic variants in patients with sporadic neuromuscular disorders. Often, when the first initial genetic analysis is performed, the reconstructed haplotype, i.e. phasing information of the variants is missing. Segregation analysis increases the diagnostic turnaround time and is not always possible if samples from family members are lacking. To overcome this difficulty, we investigated how well the linked-read technology succeeded to phase variants in these large genes, and whether it improved the identification of structural variants. Linked-read sequencing data of nemaline myopathy, distal myopathy, and proximal myopathy patients were analyzed for phasing, single nucleotide variants, and structural variants. Variant phasing was successful in the large muscle genes studied. The longest continuous phase blocks were gained using high-quality DNA samples with long DNA fragments. Homozygosity increased the number of phase blocks, especially in exome sequencing samples lacking intronic variation. In our cohort, linked-read sequencing added more information about the structural variation but did not lead to a molecular genetic diagnosis. The linked-read technology can support the clinical diagnosis of neuromuscular and other genetic disorders.


Subject(s)
Muscular Diseases , Myopathies, Nemaline , Neuromuscular Diseases , Humans , Haplotypes/genetics , Neuromuscular Diseases/diagnosis , Neuromuscular Diseases/genetics , DNA , High-Throughput Nucleotide Sequencing
18.
Acta Neuropathol ; 147(1): 15, 2024 01 12.
Article in English | MEDLINE | ID: mdl-38214778

ABSTRACT

Histopathological analysis stands as the gold standard for the identification and differentiation of inflammatory neuromuscular diseases. These disorders continue to constitute a diagnostic challenge due to their clinical heterogeneity, rarity and overlapping features. To establish standardized protocols for the diagnosis of inflammatory neuromuscular diseases, the development of cost-effective and widely applicable tools is crucial, especially in settings constrained by limited resources. The focus of this review is to emphasize the diagnostic value of major histocompatibility complex (MHC) and complement patterns in the immunohistochemical analysis of these diseases. We explore the immunological background of MHC and complement signatures that characterize inflammatory features, with a specific focus on idiopathic inflammatory myopathies. With this approach, we aim to provide a diagnostic algorithm that may improve and simplify the diagnostic workup based on a limited panel of stainings. Our approach acknowledges the current limitations in the field of inflammatory neuromuscular diseases, particularly the scarcity of large-scale, prospective studies that validate the diagnostic potential of these markers. Further efforts are needed to establish a consensus on the diagnostic protocol to effectively distinguish these diseases.


Subject(s)
Myositis , Neuromuscular Diseases , Humans , Prospective Studies , Neuromuscular Diseases/diagnosis , Major Histocompatibility Complex , Histocompatibility Antigens Class I/analysis
19.
Nervenarzt ; 95(6): 553-559, 2024 Jun.
Article in German | MEDLINE | ID: mdl-38193935

ABSTRACT

The type, distribution pattern and time course of spontaneous muscular activity are important for the diagnostics of neuromuscular diseases in the clinical practice. In neurogenic lesions with motor axonal involvement, pathologic spontaneous activity (PSA) is usually reliably detectable by needle electromyography (EMG) 2-4 weeks after occurrence of the lesion. The distribution pattern correlates with the lesion location. The focus of the present work is the description of the different forms of PSA in myogenic diseases.


Subject(s)
Electromyography , Muscle, Skeletal , Humans , Muscle, Skeletal/physiopathology , Neuromuscular Diseases/physiopathology , Neuromuscular Diseases/diagnosis , Muscle Contraction/physiology
20.
Clin Chim Acta ; 553: 117691, 2024 Jan 15.
Article in English | MEDLINE | ID: mdl-38081447

ABSTRACT

Neuromuscular disorders encompass a spectrum of conditions characterized by primary lesions within the peripheral nervous system, which include the anterior horn cell, peripheral nerve, neuromuscular junction, and muscle. In pediatrics, most of these disorders are linked to genetic causes. Despite the considerable progress, the diagnosis of these disorders remains a challenging due to wide clinical presentation, disease heterogeneity and rarity. It is noteworthy that certain neuromuscular disorders, once deemed untreatable, can now be effectively managed through novel therapies. Biomarkers emerge as indispensable tools, serving as objective measures that not only refine diagnostic accuracy but also provide guidance for therapeutic decision-making and the ongoing monitoring of long-term outcomes. Herein a comprehensive review of biomarkers in neuromuscular disorders is provided. We highlight the role of omics-based technologies that further characterize neuromuscular pathophysiology as well as identify potential therapeutic targets to guide treatment strategies.


Subject(s)
Muscular Dystrophy, Duchenne , Neuromuscular Diseases , Child , Humans , Genetic Therapy , Neuromuscular Diseases/diagnosis , Neuromuscular Diseases/genetics , Biomarkers , Muscular Dystrophy, Duchenne/genetics
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